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a458dd72e5
Fri Jan 11 17:53:58 2002 Owen Taylor <otaylor@redhat.com> * pixops/pixops.c (pixops_scale_nearest): Remove meaningless FIXME. * pixops/pixops.c (pixops_process): Comment the computation of run_end_index and fix some edge cases. * pixops/{scale_line_22_33_mmx.S, composite_line_22_4a4_mmx.S: composite_line_color_22_4a4_mmx.S}: Handle the case where dest <= dest_end properly. (#52001)
184 lines
3.1 KiB
ArmAsm
184 lines
3.1 KiB
ArmAsm
.file "scale_line_22_33_mmx.S"
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.version "01.01"
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gcc2_compiled.:
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.text
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.align 16
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#ifndef __MINGW32__
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.globl pixops_scale_line_22_33_mmx
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.type pixops_scale_line_22_33_mmx,@function
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pixops_scale_line_22_33_mmx:
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#else
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.globl _pixops_scale_line_22_33_mmx
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_pixops_scale_line_22_33_mmx:
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#endif
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/*
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* Arguments
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*
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* weights: 8(%ebp)
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* p: 12(%ebp) %esi
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* q1: 16(%ebp)
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* q2: 20(%ebp)
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* xstep: 24(%ebp)
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* p_end: 28(%ebp)
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* xinit: 32(%ebp)
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*
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*/
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/*
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* Function call entry
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*/
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pushl %ebp
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movl %esp,%ebp
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subl $28,%esp
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pushl %edi
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pushl %esi
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pushl %ebx
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/* Locals:
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* int x %ebx
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* int x_scaled -24(%ebp)
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*/
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/*
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* Setup
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*/
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/* Initialize variables */
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movl 32(%ebp),%ebx
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movl 32(%ebp),%edx
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sarl $16,%edx
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movl 12(%ebp),%esi
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cmpl 28(%ebp),%esi
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jnb .out
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/* For the body of this loop, %mm01, %mm1, %mm2, %mm3 hold the 4 adjoining
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* points we are interpolating between, as:
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*
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* 000000BB00GG00RR
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*/
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/* Load initial values into %mm1, %mm3 */
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leal (%edx,%edx,2),%edx # Multiply by 3
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movl 16(%ebp),%edi
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pxor %mm4, %mm4
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movzbl 2(%edi,%edx),%ecx
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shll $16,%ecx
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movzwl (%edi,%edx),%eax
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orl %eax,%ecx
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movd %ecx, %mm1
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punpcklbw %mm4, %mm1
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movl 20(%ebp),%edi
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movzbl 2(%edi,%edx),%ecx
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shll $16,%ecx
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movzwl (%edi,%edx),%eax
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orl %eax,%ecx
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movd %ecx, %mm3
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punpcklbw %mm4, %mm3
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addl $65536,%ebx
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movl %ebx,%edx
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sarl $16,%edx
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jmp .newx
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.p2align 4,,7
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.loop:
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/* short *pixel_weights = weights + ((x >> (SCALE_SHIFT - SUBSAMPLE_BITS)) & SUBSAMPLE_MASK) * n_x * n_y
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* 16 4 0xf 2 2
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*/
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movl %ebx,%eax
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andl $0xf000,%eax
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shrl $7,%eax
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/* At this point, %edi holds weights. Load the 4 weights into %mm4,%mm5,%mm6,%mm7, multiply and
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* accumulate.
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*/
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movq (%edi,%eax),%mm4
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pmullw %mm0,%mm4
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movq 8(%edi,%eax),%mm5
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pmullw %mm1,%mm5
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movq 16(%edi,%eax),%mm6
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movq 24(%edi,%eax),%mm7
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pmullw %mm2,%mm6
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pmullw %mm3,%mm7
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paddw %mm4, %mm5
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paddw %mm6, %mm7
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paddw %mm5, %mm7
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/* %mm7 holds the accumulated sum. Compute (C + 0x80) / 256
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*/
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pxor %mm4, %mm4
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movl $8421504, %eax # 0x00808080
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movd %eax, %mm6
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punpcklbw %mm4, %mm6
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paddw %mm6, %mm7
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psrlw $8, %mm7
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/* Pack into %eax and store result
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*/
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packuswb %mm7, %mm7
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movd %mm7, %eax
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movb %al, (%esi)
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shrl $8, %eax
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movw %ax, 1(%esi)
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addl $3, %esi
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cmpl %esi,28(%ebp)
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je .out
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/* x += x_step; */
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addl 24(%ebp),%ebx
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/* x_scaled = x >> 16; */
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movl %ebx,%edx
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sarl $16,%edx
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cmpl %edx,-24(%ebp)
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je .loop
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.newx:
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movl %edx,-24(%ebp)
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/*
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* Load the two new values into %mm1, %mm3, move old values into %mm0, %mm2
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*/
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movq %mm1, %mm0
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movq %mm3, %mm2
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leal (%edx,%edx,2),%edx # Multiply by 3
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movl 16(%ebp),%edi
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movzbl 2(%edi,%edx),%ecx
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shll $16,%ecx
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movzwl (%edi,%edx),%eax
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orl %eax,%ecx
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movd %ecx, %mm1
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punpcklbw %mm4, %mm1
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movl 20(%ebp),%edi
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movzbl 2(%edi,%edx),%ecx
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shll $16,%ecx
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movzwl (%edi,%edx),%eax
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orl %eax,%ecx
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movd %ecx, %mm3
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punpcklbw %mm4, %mm3
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movl 8(%ebp),%edi
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jmp .loop
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.out:
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movl %esi,%eax
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emms
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leal -40(%ebp),%esp
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popl %ebx
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popl %esi
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popl %edi
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movl %ebp,%esp
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popl %ebp
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ret
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